1 /*
2 * services/cache/dns.c - Cache services for DNS using msg and rrset caches.
3 *
4 * Copyright (c) 2007, NLnet Labs. All rights reserved.
5 *
6 * This software is open source.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * Redistributions of source code must retain the above copyright notice,
13 * this list of conditions and the following disclaimer.
14 *
15 * Redistributions in binary form must reproduce the above copyright notice,
16 * this list of conditions and the following disclaimer in the documentation
17 * and/or other materials provided with the distribution.
18 *
19 * Neither the name of the NLNET LABS nor the names of its contributors may
20 * be used to endorse or promote products derived from this software without
21 * specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
24 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
25 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
26 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
27 * HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
29 * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
30 * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
31 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
32 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
33 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 */
35
36 /**
37 * \file
38 *
39 * This file contains the DNS cache.
40 */
41 #include "config.h"
42 #include "iterator/iter_delegpt.h"
43 #include "iterator/iter_utils.h"
44 #include "validator/val_nsec.h"
45 #include "validator/val_utils.h"
46 #include "services/cache/dns.h"
47 #include "services/cache/rrset.h"
48 #include "util/data/msgparse.h"
49 #include "util/data/msgreply.h"
50 #include "util/data/packed_rrset.h"
51 #include "util/data/dname.h"
52 #include "util/module.h"
53 #include "util/net_help.h"
54 #include "util/regional.h"
55 #include "util/config_file.h"
56 #include "sldns/sbuffer.h"
57
58 /** store rrsets in the rrset cache.
59 * @param env: module environment with caches.
60 * @param rep: contains list of rrsets to store.
61 * @param now: current time.
62 * @param leeway: during prefetch how much leeway to update TTLs.
63 * This makes rrsets (other than type NS) timeout sooner so they get
64 * updated with a new full TTL.
65 * Type NS does not get this, because it must not be refreshed from the
66 * child domain, but keep counting down properly.
67 * @param pside: if from parentside discovered NS, so that its NS is okay
68 * in a prefetch situation to be updated (without becoming sticky).
69 * @param qrep: update rrsets here if cache is better
70 * @param region: for qrep allocs.
71 * @param qstarttime: time when delegations were looked up, this is perhaps
72 * earlier than the time in now. The time is used to determine if RRsets
73 * of type NS have expired, so that they can only be updated using
74 * lookups of delegation points that did not use them, since they had
75 * expired then.
76 */
77 static void
store_rrsets(struct module_env * env,struct reply_info * rep,time_t now,time_t leeway,int pside,struct reply_info * qrep,struct regional * region,time_t qstarttime)78 store_rrsets(struct module_env* env, struct reply_info* rep, time_t now,
79 time_t leeway, int pside, struct reply_info* qrep,
80 struct regional* region, time_t qstarttime)
81 {
82 size_t i;
83 time_t ttl, min_ttl = rep->ttl;
84 /* see if rrset already exists in cache, if not insert it. */
85 for(i=0; i<rep->rrset_count; i++) {
86 rep->ref[i].key = rep->rrsets[i];
87 rep->ref[i].id = rep->rrsets[i]->id;
88 /* update ref if it was in the cache */
89 switch(rrset_cache_update(env->rrset_cache, &rep->ref[i],
90 env->alloc, ((ntohs(rep->ref[i].key->rk.type)==
91 LDNS_RR_TYPE_NS && !pside)?qstarttime:now + leeway))) {
92 case 0: /* ref unchanged, item inserted */
93 break;
94 case 2: /* ref updated, cache is superior */
95 if(region) {
96 struct ub_packed_rrset_key* ck;
97 lock_rw_rdlock(&rep->ref[i].key->entry.lock);
98 /* if deleted rrset, do not copy it */
99 if(rep->ref[i].key->id == 0 ||
100 rep->ref[i].id != rep->ref[i].key->id)
101 ck = NULL;
102 else ck = packed_rrset_copy_region(
103 rep->ref[i].key, region, now);
104 lock_rw_unlock(&rep->ref[i].key->entry.lock);
105 if(ck) {
106 /* use cached copy if memory allows */
107 qrep->rrsets[i] = ck;
108 }
109 }
110 /* no break: also copy key item */
111 /* the line below is matched by gcc regex and silences
112 * the fallthrough warning */
113 ATTR_FALLTHROUGH
114 /* fallthrough */
115 case 1: /* ref updated, item inserted */
116 rep->rrsets[i] = rep->ref[i].key;
117 /* ref was updated; make sure the message ttl is
118 * updated to the minimum of the current rrsets. */
119 lock_rw_rdlock(&rep->ref[i].key->entry.lock);
120 /* if deleted, skip ttl update. */
121 if(rep->ref[i].key->id != 0 &&
122 rep->ref[i].id == rep->ref[i].key->id) {
123 ttl = ((struct packed_rrset_data*)
124 rep->rrsets[i]->entry.data)->ttl;
125 if(ttl < min_ttl) min_ttl = ttl;
126 }
127 lock_rw_unlock(&rep->ref[i].key->entry.lock);
128 }
129 }
130 if(min_ttl < rep->ttl) {
131 rep->ttl = min_ttl;
132 rep->prefetch_ttl = PREFETCH_TTL_CALC(rep->ttl);
133 rep->serve_expired_ttl = rep->ttl + SERVE_EXPIRED_TTL;
134 }
135 }
136
137 /** delete message from message cache */
138 void
msg_cache_remove(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,uint16_t flags)139 msg_cache_remove(struct module_env* env, uint8_t* qname, size_t qnamelen,
140 uint16_t qtype, uint16_t qclass, uint16_t flags)
141 {
142 struct query_info k;
143 hashvalue_type h;
144
145 k.qname = qname;
146 k.qname_len = qnamelen;
147 k.qtype = qtype;
148 k.qclass = qclass;
149 k.local_alias = NULL;
150 h = query_info_hash(&k, flags);
151 slabhash_remove(env->msg_cache, h, &k);
152 }
153
154 void
dns_cache_store_msg(struct module_env * env,struct query_info * qinfo,hashvalue_type hash,struct reply_info * rep,time_t leeway,int pside,struct reply_info * qrep,uint32_t flags,struct regional * region,time_t qstarttime)155 dns_cache_store_msg(struct module_env* env, struct query_info* qinfo,
156 hashvalue_type hash, struct reply_info* rep, time_t leeway, int pside,
157 struct reply_info* qrep, uint32_t flags, struct regional* region,
158 time_t qstarttime)
159 {
160 struct msgreply_entry* e;
161 time_t ttl = rep->ttl;
162 size_t i;
163
164 /* store RRsets */
165 for(i=0; i<rep->rrset_count; i++) {
166 rep->ref[i].key = rep->rrsets[i];
167 rep->ref[i].id = rep->rrsets[i]->id;
168 }
169
170 /* there was a reply_info_sortref(rep) here but it seems to be
171 * unnecessary, because the cache gets locked per rrset. */
172 reply_info_set_ttls(rep, *env->now);
173 store_rrsets(env, rep, *env->now, leeway, pside, qrep, region,
174 qstarttime);
175 if(ttl == 0 && !(flags & DNSCACHE_STORE_ZEROTTL)) {
176 /* we do not store the message, but we did store the RRs,
177 * which could be useful for delegation information */
178 verbose(VERB_ALGO, "TTL 0: dropped msg from cache");
179 reply_info_delete(rep, NULL);
180 /* if the message is in the cache, remove that msg,
181 * so that the TTL 0 response can be returned for future
182 * responses (i.e. don't get answered from
183 * cache, but instead go to recursion to get this TTL0
184 * response).
185 * Possible messages that could be in the cache:
186 * - SERVFAIL
187 * - NXDOMAIN
188 * - NODATA
189 * - an older record that is expired
190 * - an older record that did not yet expire */
191 msg_cache_remove(env, qinfo->qname, qinfo->qname_len,
192 qinfo->qtype, qinfo->qclass, flags);
193 return;
194 }
195
196 /* store msg in the cache */
197 reply_info_sortref(rep);
198 if(!(e = query_info_entrysetup(qinfo, rep, hash))) {
199 log_err("store_msg: malloc failed");
200 return;
201 }
202 slabhash_insert(env->msg_cache, hash, &e->entry, rep, env->alloc);
203 }
204
205 /** find closest NS or DNAME and returns the rrset (locked) */
206 static struct ub_packed_rrset_key*
find_closest_of_type(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qclass,time_t now,uint16_t searchtype,int stripfront,int noexpiredabove,uint8_t * expiretop,size_t expiretoplen)207 find_closest_of_type(struct module_env* env, uint8_t* qname, size_t qnamelen,
208 uint16_t qclass, time_t now, uint16_t searchtype, int stripfront,
209 int noexpiredabove, uint8_t* expiretop, size_t expiretoplen)
210 {
211 struct ub_packed_rrset_key *rrset;
212 uint8_t lablen;
213
214 if(stripfront) {
215 /* strip off so that DNAMEs have strict subdomain match */
216 lablen = *qname;
217 qname += lablen + 1;
218 qnamelen -= lablen + 1;
219 }
220
221 /* snip off front part of qname until the type is found */
222 while(qnamelen > 0) {
223 if((rrset = rrset_cache_lookup(env->rrset_cache, qname,
224 qnamelen, searchtype, qclass, 0, now, 0))) {
225 uint8_t* origqname = qname;
226 size_t origqnamelen = qnamelen;
227 if(!noexpiredabove)
228 return rrset;
229 /* if expiretop set, do not look above it, but
230 * qname is equal, so the just found result is also
231 * the nonexpired above part. */
232 if(expiretop && qnamelen == expiretoplen &&
233 query_dname_compare(qname, expiretop)==0)
234 return rrset;
235 /* check for expiry, but we have to let go of the rrset
236 * for the lock ordering */
237 lock_rw_unlock(&rrset->entry.lock);
238 /* the rrset_cache_expired_above function always takes
239 * off one label (if qnamelen>0) and returns the final
240 * qname where it searched, so we can continue from
241 * there turning the O N*N search into O N. */
242 if(!rrset_cache_expired_above(env->rrset_cache, &qname,
243 &qnamelen, searchtype, qclass, now, expiretop,
244 expiretoplen)) {
245 /* we want to return rrset, but it may be
246 * gone from cache, if so, just loop like
247 * it was not in the cache in the first place.
248 */
249 if((rrset = rrset_cache_lookup(env->
250 rrset_cache, origqname, origqnamelen,
251 searchtype, qclass, 0, now, 0))) {
252 return rrset;
253 }
254 }
255 log_nametypeclass(VERB_ALGO, "ignoring rrset because expired rrsets exist above it", origqname, searchtype, qclass);
256 continue;
257 }
258
259 /* snip off front label */
260 lablen = *qname;
261 qname += lablen + 1;
262 qnamelen -= lablen + 1;
263 }
264 return NULL;
265 }
266
267 /** add addr to additional section */
268 static void
addr_to_additional(struct ub_packed_rrset_key * rrset,struct regional * region,struct dns_msg * msg,time_t now)269 addr_to_additional(struct ub_packed_rrset_key* rrset, struct regional* region,
270 struct dns_msg* msg, time_t now)
271 {
272 if((msg->rep->rrsets[msg->rep->rrset_count] =
273 packed_rrset_copy_region(rrset, region, now))) {
274 msg->rep->ar_numrrsets++;
275 msg->rep->rrset_count++;
276 }
277 }
278
279 /** lookup message in message cache */
280 struct msgreply_entry*
msg_cache_lookup(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,uint16_t flags,time_t now,int wr)281 msg_cache_lookup(struct module_env* env, uint8_t* qname, size_t qnamelen,
282 uint16_t qtype, uint16_t qclass, uint16_t flags, time_t now, int wr)
283 {
284 struct lruhash_entry* e;
285 struct query_info k;
286 hashvalue_type h;
287
288 k.qname = qname;
289 k.qname_len = qnamelen;
290 k.qtype = qtype;
291 k.qclass = qclass;
292 k.local_alias = NULL;
293 h = query_info_hash(&k, flags);
294 e = slabhash_lookup(env->msg_cache, h, &k, wr);
295
296 if(!e) return NULL;
297 if( now > ((struct reply_info*)e->data)->ttl ) {
298 lock_rw_unlock(&e->lock);
299 return NULL;
300 }
301 return (struct msgreply_entry*)e->key;
302 }
303
304 /** find and add A and AAAA records for nameservers in delegpt */
305 static int
find_add_addrs(struct module_env * env,uint16_t qclass,struct regional * region,struct delegpt * dp,time_t now,struct dns_msg ** msg)306 find_add_addrs(struct module_env* env, uint16_t qclass,
307 struct regional* region, struct delegpt* dp, time_t now,
308 struct dns_msg** msg)
309 {
310 struct delegpt_ns* ns;
311 struct msgreply_entry* neg;
312 struct ub_packed_rrset_key* akey;
313 for(ns = dp->nslist; ns; ns = ns->next) {
314 akey = rrset_cache_lookup(env->rrset_cache, ns->name,
315 ns->namelen, LDNS_RR_TYPE_A, qclass, 0, now, 0);
316 if(akey) {
317 if(!delegpt_add_rrset_A(dp, region, akey, 0, NULL)) {
318 lock_rw_unlock(&akey->entry.lock);
319 return 0;
320 }
321 if(msg)
322 addr_to_additional(akey, region, *msg, now);
323 lock_rw_unlock(&akey->entry.lock);
324 } else {
325 /* BIT_CD on false because delegpt lookup does
326 * not use dns64 translation */
327 neg = msg_cache_lookup(env, ns->name, ns->namelen,
328 LDNS_RR_TYPE_A, qclass, 0, now, 0);
329 if(neg) {
330 delegpt_add_neg_msg(dp, neg);
331 lock_rw_unlock(&neg->entry.lock);
332 }
333 }
334 akey = rrset_cache_lookup(env->rrset_cache, ns->name,
335 ns->namelen, LDNS_RR_TYPE_AAAA, qclass, 0, now, 0);
336 if(akey) {
337 if(!delegpt_add_rrset_AAAA(dp, region, akey, 0, NULL)) {
338 lock_rw_unlock(&akey->entry.lock);
339 return 0;
340 }
341 if(msg)
342 addr_to_additional(akey, region, *msg, now);
343 lock_rw_unlock(&akey->entry.lock);
344 } else {
345 /* BIT_CD on false because delegpt lookup does
346 * not use dns64 translation */
347 neg = msg_cache_lookup(env, ns->name, ns->namelen,
348 LDNS_RR_TYPE_AAAA, qclass, 0, now, 0);
349 /* Because recursion for lookup uses BIT_CD, check
350 * for that so it stops the recursion lookup, if a
351 * negative answer is cached. Because the cache uses
352 * the CD flag for type AAAA. */
353 if(!neg)
354 neg = msg_cache_lookup(env, ns->name, ns->namelen,
355 LDNS_RR_TYPE_AAAA, qclass, BIT_CD, now, 0);
356 if(neg) {
357 delegpt_add_neg_msg(dp, neg);
358 lock_rw_unlock(&neg->entry.lock);
359 }
360 }
361 }
362 return 1;
363 }
364
365 /** find and add A and AAAA records for missing nameservers in delegpt */
366 int
cache_fill_missing(struct module_env * env,uint16_t qclass,struct regional * region,struct delegpt * dp)367 cache_fill_missing(struct module_env* env, uint16_t qclass,
368 struct regional* region, struct delegpt* dp)
369 {
370 struct delegpt_ns* ns;
371 struct msgreply_entry* neg;
372 struct ub_packed_rrset_key* akey;
373 time_t now = *env->now;
374 for(ns = dp->nslist; ns; ns = ns->next) {
375 if(ns->cache_lookup_count > ITERATOR_NAME_CACHELOOKUP_MAX)
376 continue;
377 ns->cache_lookup_count++;
378 akey = rrset_cache_lookup(env->rrset_cache, ns->name,
379 ns->namelen, LDNS_RR_TYPE_A, qclass, 0, now, 0);
380 if(akey) {
381 if(!delegpt_add_rrset_A(dp, region, akey, ns->lame,
382 NULL)) {
383 lock_rw_unlock(&akey->entry.lock);
384 return 0;
385 }
386 log_nametypeclass(VERB_ALGO, "found in cache",
387 ns->name, LDNS_RR_TYPE_A, qclass);
388 lock_rw_unlock(&akey->entry.lock);
389 } else {
390 /* BIT_CD on false because delegpt lookup does
391 * not use dns64 translation */
392 neg = msg_cache_lookup(env, ns->name, ns->namelen,
393 LDNS_RR_TYPE_A, qclass, 0, now, 0);
394 if(neg) {
395 delegpt_add_neg_msg(dp, neg);
396 lock_rw_unlock(&neg->entry.lock);
397 }
398 }
399 akey = rrset_cache_lookup(env->rrset_cache, ns->name,
400 ns->namelen, LDNS_RR_TYPE_AAAA, qclass, 0, now, 0);
401 if(akey) {
402 if(!delegpt_add_rrset_AAAA(dp, region, akey, ns->lame,
403 NULL)) {
404 lock_rw_unlock(&akey->entry.lock);
405 return 0;
406 }
407 log_nametypeclass(VERB_ALGO, "found in cache",
408 ns->name, LDNS_RR_TYPE_AAAA, qclass);
409 lock_rw_unlock(&akey->entry.lock);
410 } else {
411 /* BIT_CD on false because delegpt lookup does
412 * not use dns64 translation */
413 neg = msg_cache_lookup(env, ns->name, ns->namelen,
414 LDNS_RR_TYPE_AAAA, qclass, 0, now, 0);
415 /* Because recursion for lookup uses BIT_CD, check
416 * for that so it stops the recursion lookup, if a
417 * negative answer is cached. Because the cache uses
418 * the CD flag for type AAAA. */
419 if(!neg)
420 neg = msg_cache_lookup(env, ns->name, ns->namelen,
421 LDNS_RR_TYPE_AAAA, qclass, BIT_CD, now, 0);
422 if(neg) {
423 delegpt_add_neg_msg(dp, neg);
424 lock_rw_unlock(&neg->entry.lock);
425 }
426 }
427 }
428 return 1;
429 }
430
431 /** find and add DS or NSEC to delegation msg */
432 static void
find_add_ds(struct module_env * env,struct regional * region,struct dns_msg * msg,struct delegpt * dp,time_t now)433 find_add_ds(struct module_env* env, struct regional* region,
434 struct dns_msg* msg, struct delegpt* dp, time_t now)
435 {
436 /* Lookup the DS or NSEC at the delegation point. */
437 struct ub_packed_rrset_key* rrset = rrset_cache_lookup(
438 env->rrset_cache, dp->name, dp->namelen, LDNS_RR_TYPE_DS,
439 msg->qinfo.qclass, 0, now, 0);
440 if(!rrset) {
441 /* NOTE: this won't work for alternate NSEC schemes
442 * (opt-in, NSEC3) */
443 rrset = rrset_cache_lookup(env->rrset_cache, dp->name,
444 dp->namelen, LDNS_RR_TYPE_NSEC, msg->qinfo.qclass,
445 0, now, 0);
446 /* Note: the PACKED_RRSET_NSEC_AT_APEX flag is not used.
447 * since this is a referral, we need the NSEC at the parent
448 * side of the zone cut, not the NSEC at apex side. */
449 if(rrset && nsec_has_type(rrset, LDNS_RR_TYPE_DS)) {
450 lock_rw_unlock(&rrset->entry.lock);
451 rrset = NULL; /* discard wrong NSEC */
452 }
453 }
454 if(rrset) {
455 /* add it to auth section. This is the second rrset. */
456 if((msg->rep->rrsets[msg->rep->rrset_count] =
457 packed_rrset_copy_region(rrset, region, now))) {
458 msg->rep->ns_numrrsets++;
459 msg->rep->rrset_count++;
460 }
461 lock_rw_unlock(&rrset->entry.lock);
462 }
463 }
464
465 struct dns_msg*
dns_msg_create(uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,struct regional * region,size_t capacity)466 dns_msg_create(uint8_t* qname, size_t qnamelen, uint16_t qtype,
467 uint16_t qclass, struct regional* region, size_t capacity)
468 {
469 struct dns_msg* msg = (struct dns_msg*)regional_alloc(region,
470 sizeof(struct dns_msg));
471 if(!msg)
472 return NULL;
473 msg->qinfo.qname = regional_alloc_init(region, qname, qnamelen);
474 if(!msg->qinfo.qname)
475 return NULL;
476 msg->qinfo.qname_len = qnamelen;
477 msg->qinfo.qtype = qtype;
478 msg->qinfo.qclass = qclass;
479 msg->qinfo.local_alias = NULL;
480 /* non-packed reply_info, because it needs to grow the array */
481 msg->rep = (struct reply_info*)regional_alloc_zero(region,
482 sizeof(struct reply_info)-sizeof(struct rrset_ref));
483 if(!msg->rep)
484 return NULL;
485 if(capacity > RR_COUNT_MAX)
486 return NULL; /* integer overflow protection */
487 msg->rep->flags = BIT_QR; /* with QR, no AA */
488 msg->rep->qdcount = 1;
489 msg->rep->reason_bogus = LDNS_EDE_NONE;
490 msg->rep->rrsets = (struct ub_packed_rrset_key**)
491 regional_alloc(region,
492 capacity*sizeof(struct ub_packed_rrset_key*));
493 if(!msg->rep->rrsets)
494 return NULL;
495 return msg;
496 }
497
498 int
dns_msg_authadd(struct dns_msg * msg,struct regional * region,struct ub_packed_rrset_key * rrset,time_t now)499 dns_msg_authadd(struct dns_msg* msg, struct regional* region,
500 struct ub_packed_rrset_key* rrset, time_t now)
501 {
502 if(!(msg->rep->rrsets[msg->rep->rrset_count++] =
503 packed_rrset_copy_region(rrset, region, now)))
504 return 0;
505 msg->rep->ns_numrrsets++;
506 return 1;
507 }
508
509 int
dns_msg_ansadd(struct dns_msg * msg,struct regional * region,struct ub_packed_rrset_key * rrset,time_t now)510 dns_msg_ansadd(struct dns_msg* msg, struct regional* region,
511 struct ub_packed_rrset_key* rrset, time_t now)
512 {
513 if(!(msg->rep->rrsets[msg->rep->rrset_count++] =
514 packed_rrset_copy_region(rrset, region, now)))
515 return 0;
516 msg->rep->an_numrrsets++;
517 return 1;
518 }
519
520 struct delegpt*
dns_cache_find_delegation(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,struct regional * region,struct dns_msg ** msg,time_t now,int noexpiredabove,uint8_t * expiretop,size_t expiretoplen)521 dns_cache_find_delegation(struct module_env* env, uint8_t* qname,
522 size_t qnamelen, uint16_t qtype, uint16_t qclass,
523 struct regional* region, struct dns_msg** msg, time_t now,
524 int noexpiredabove, uint8_t* expiretop, size_t expiretoplen)
525 {
526 /* try to find closest NS rrset */
527 struct ub_packed_rrset_key* nskey;
528 struct packed_rrset_data* nsdata;
529 struct delegpt* dp;
530
531 nskey = find_closest_of_type(env, qname, qnamelen, qclass, now,
532 LDNS_RR_TYPE_NS, 0, noexpiredabove, expiretop, expiretoplen);
533 if(!nskey) /* hope the caller has hints to prime or something */
534 return NULL;
535 nsdata = (struct packed_rrset_data*)nskey->entry.data;
536 /* got the NS key, create delegation point */
537 dp = delegpt_create(region);
538 if(!dp || !delegpt_set_name(dp, region, nskey->rk.dname)) {
539 lock_rw_unlock(&nskey->entry.lock);
540 log_err("find_delegation: out of memory");
541 return NULL;
542 }
543 /* create referral message */
544 if(msg) {
545 /* allocate the array to as much as we could need:
546 * NS rrset + DS/NSEC rrset +
547 * A rrset for every NS RR
548 * AAAA rrset for every NS RR
549 */
550 *msg = dns_msg_create(qname, qnamelen, qtype, qclass, region,
551 2 + nsdata->count*2);
552 if(!*msg || !dns_msg_authadd(*msg, region, nskey, now)) {
553 lock_rw_unlock(&nskey->entry.lock);
554 log_err("find_delegation: out of memory");
555 return NULL;
556 }
557 }
558 if(!delegpt_rrset_add_ns(dp, region, nskey, 0))
559 log_err("find_delegation: addns out of memory");
560 lock_rw_unlock(&nskey->entry.lock); /* first unlock before next lookup*/
561 /* find and add DS/NSEC (if any) */
562 if(msg)
563 find_add_ds(env, region, *msg, dp, now);
564 /* find and add A entries */
565 if(!find_add_addrs(env, qclass, region, dp, now, msg))
566 log_err("find_delegation: addrs out of memory");
567 return dp;
568 }
569
570 /** allocate dns_msg from query_info and reply_info */
571 static struct dns_msg*
gen_dns_msg(struct regional * region,struct query_info * q,size_t num)572 gen_dns_msg(struct regional* region, struct query_info* q, size_t num)
573 {
574 struct dns_msg* msg = (struct dns_msg*)regional_alloc(region,
575 sizeof(struct dns_msg));
576 if(!msg)
577 return NULL;
578 memcpy(&msg->qinfo, q, sizeof(struct query_info));
579 msg->qinfo.qname = regional_alloc_init(region, q->qname, q->qname_len);
580 if(!msg->qinfo.qname)
581 return NULL;
582 /* allocate replyinfo struct and rrset key array separately */
583 msg->rep = (struct reply_info*)regional_alloc(region,
584 sizeof(struct reply_info) - sizeof(struct rrset_ref));
585 if(!msg->rep)
586 return NULL;
587 msg->rep->reason_bogus = LDNS_EDE_NONE;
588 msg->rep->reason_bogus_str = NULL;
589 if(num > RR_COUNT_MAX)
590 return NULL; /* integer overflow protection */
591 msg->rep->rrsets = (struct ub_packed_rrset_key**)
592 regional_alloc(region,
593 num * sizeof(struct ub_packed_rrset_key*));
594 if(!msg->rep->rrsets)
595 return NULL;
596 return msg;
597 }
598
599 struct dns_msg*
tomsg(struct module_env * env,struct query_info * q,struct reply_info * r,struct regional * region,time_t now,int allow_expired,struct regional * scratch)600 tomsg(struct module_env* env, struct query_info* q, struct reply_info* r,
601 struct regional* region, time_t now, int allow_expired,
602 struct regional* scratch)
603 {
604 struct dns_msg* msg;
605 size_t i;
606 int is_expired = 0;
607 time_t now_control = now;
608 if(now > r->ttl) {
609 /* Check if we are allowed to serve expired */
610 if(allow_expired) {
611 if(env->cfg->serve_expired_ttl &&
612 r->serve_expired_ttl < now) {
613 return NULL;
614 }
615 /* Ignore expired failure answers */
616 if(FLAGS_GET_RCODE(r->flags) !=
617 LDNS_RCODE_NOERROR &&
618 FLAGS_GET_RCODE(r->flags) !=
619 LDNS_RCODE_NXDOMAIN &&
620 FLAGS_GET_RCODE(r->flags) !=
621 LDNS_RCODE_YXDOMAIN)
622 return 0;
623 } else {
624 return NULL;
625 }
626 /* Change the current time so we can pass the below TTL checks when
627 * serving expired data. */
628 now_control = r->ttl - env->cfg->serve_expired_reply_ttl;
629 is_expired = 1;
630 }
631
632 msg = gen_dns_msg(region, q, r->rrset_count);
633 if(!msg) return NULL;
634 msg->rep->flags = r->flags;
635 msg->rep->qdcount = r->qdcount;
636 msg->rep->ttl = is_expired
637 ?SERVE_EXPIRED_REPLY_TTL
638 :r->ttl - now;
639 if(r->prefetch_ttl > now)
640 msg->rep->prefetch_ttl = r->prefetch_ttl - now;
641 else
642 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl);
643 msg->rep->serve_expired_ttl = msg->rep->ttl + SERVE_EXPIRED_TTL;
644 msg->rep->security = r->security;
645 msg->rep->an_numrrsets = r->an_numrrsets;
646 msg->rep->ns_numrrsets = r->ns_numrrsets;
647 msg->rep->ar_numrrsets = r->ar_numrrsets;
648 msg->rep->rrset_count = r->rrset_count;
649 msg->rep->authoritative = r->authoritative;
650 msg->rep->reason_bogus = r->reason_bogus;
651 if(r->reason_bogus_str) {
652 msg->rep->reason_bogus_str = regional_strdup(region, r->reason_bogus_str);
653 }
654
655 if(!rrset_array_lock(r->ref, r->rrset_count, now_control)) {
656 return NULL;
657 }
658 if(r->an_numrrsets > 0 && (r->rrsets[0]->rk.type == htons(
659 LDNS_RR_TYPE_CNAME) || r->rrsets[0]->rk.type == htons(
660 LDNS_RR_TYPE_DNAME)) && !reply_check_cname_chain(q, r)) {
661 /* cname chain is now invalid, reconstruct msg */
662 rrset_array_unlock(r->ref, r->rrset_count);
663 return NULL;
664 }
665 if(r->security == sec_status_secure && !reply_all_rrsets_secure(r)) {
666 /* message rrsets have changed status, revalidate */
667 rrset_array_unlock(r->ref, r->rrset_count);
668 return NULL;
669 }
670 for(i=0; i<msg->rep->rrset_count; i++) {
671 msg->rep->rrsets[i] = packed_rrset_copy_region(r->rrsets[i],
672 region, now);
673 if(!msg->rep->rrsets[i]) {
674 rrset_array_unlock(r->ref, r->rrset_count);
675 return NULL;
676 }
677 }
678 if(env)
679 rrset_array_unlock_touch(env->rrset_cache, scratch, r->ref,
680 r->rrset_count);
681 else
682 rrset_array_unlock(r->ref, r->rrset_count);
683 return msg;
684 }
685
686 struct dns_msg*
dns_msg_deepcopy_region(struct dns_msg * origin,struct regional * region)687 dns_msg_deepcopy_region(struct dns_msg* origin, struct regional* region)
688 {
689 size_t i;
690 struct dns_msg* res = NULL;
691 res = gen_dns_msg(region, &origin->qinfo, origin->rep->rrset_count);
692 if(!res) return NULL;
693 *res->rep = *origin->rep;
694 if(origin->rep->reason_bogus_str) {
695 res->rep->reason_bogus_str = regional_strdup(region,
696 origin->rep->reason_bogus_str);
697 }
698 for(i=0; i<res->rep->rrset_count; i++) {
699 res->rep->rrsets[i] = packed_rrset_copy_region(
700 origin->rep->rrsets[i], region, 0);
701 if(!res->rep->rrsets[i]) {
702 return NULL;
703 }
704 }
705 return res;
706 }
707
708 /** synthesize RRset-only response from cached RRset item */
709 static struct dns_msg*
rrset_msg(struct ub_packed_rrset_key * rrset,struct regional * region,time_t now,struct query_info * q)710 rrset_msg(struct ub_packed_rrset_key* rrset, struct regional* region,
711 time_t now, struct query_info* q)
712 {
713 struct dns_msg* msg;
714 struct packed_rrset_data* d = (struct packed_rrset_data*)
715 rrset->entry.data;
716 if(now > d->ttl)
717 return NULL;
718 msg = gen_dns_msg(region, q, 1); /* only the CNAME (or other) RRset */
719 if(!msg)
720 return NULL;
721 msg->rep->flags = BIT_QR; /* reply, no AA, no error */
722 msg->rep->authoritative = 0; /* reply stored in cache can't be authoritative */
723 msg->rep->qdcount = 1;
724 msg->rep->ttl = d->ttl - now;
725 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl);
726 msg->rep->serve_expired_ttl = msg->rep->ttl + SERVE_EXPIRED_TTL;
727 msg->rep->security = sec_status_unchecked;
728 msg->rep->an_numrrsets = 1;
729 msg->rep->ns_numrrsets = 0;
730 msg->rep->ar_numrrsets = 0;
731 msg->rep->rrset_count = 1;
732 msg->rep->reason_bogus = LDNS_EDE_NONE;
733 msg->rep->rrsets[0] = packed_rrset_copy_region(rrset, region, now);
734 if(!msg->rep->rrsets[0]) /* copy CNAME */
735 return NULL;
736 return msg;
737 }
738
739 /** synthesize DNAME+CNAME response from cached DNAME item */
740 static struct dns_msg*
synth_dname_msg(struct ub_packed_rrset_key * rrset,struct regional * region,time_t now,struct query_info * q,enum sec_status * sec_status)741 synth_dname_msg(struct ub_packed_rrset_key* rrset, struct regional* region,
742 time_t now, struct query_info* q, enum sec_status* sec_status)
743 {
744 struct dns_msg* msg;
745 struct ub_packed_rrset_key* ck;
746 struct packed_rrset_data* newd, *d = (struct packed_rrset_data*)
747 rrset->entry.data;
748 uint8_t* newname, *dtarg = NULL;
749 size_t newlen, dtarglen;
750 if(now > d->ttl)
751 return NULL;
752 /* only allow validated (with DNSSEC) DNAMEs used from cache
753 * for insecure DNAMEs, query again. */
754 *sec_status = d->security;
755 /* return sec status, so the status of the CNAME can be checked
756 * by the calling routine. */
757 msg = gen_dns_msg(region, q, 2); /* DNAME + CNAME RRset */
758 if(!msg)
759 return NULL;
760 msg->rep->flags = BIT_QR; /* reply, no AA, no error */
761 msg->rep->authoritative = 0; /* reply stored in cache can't be authoritative */
762 msg->rep->qdcount = 1;
763 msg->rep->ttl = d->ttl - now;
764 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(msg->rep->ttl);
765 msg->rep->serve_expired_ttl = msg->rep->ttl + SERVE_EXPIRED_TTL;
766 msg->rep->security = sec_status_unchecked;
767 msg->rep->an_numrrsets = 1;
768 msg->rep->ns_numrrsets = 0;
769 msg->rep->ar_numrrsets = 0;
770 msg->rep->rrset_count = 1;
771 msg->rep->reason_bogus = LDNS_EDE_NONE;
772 msg->rep->rrsets[0] = packed_rrset_copy_region(rrset, region, now);
773 if(!msg->rep->rrsets[0]) /* copy DNAME */
774 return NULL;
775 /* synth CNAME rrset */
776 get_cname_target(rrset, &dtarg, &dtarglen);
777 if(!dtarg)
778 return NULL;
779 newlen = q->qname_len + dtarglen - rrset->rk.dname_len;
780 if(newlen > LDNS_MAX_DOMAINLEN) {
781 msg->rep->flags |= LDNS_RCODE_YXDOMAIN;
782 return msg;
783 }
784 newname = (uint8_t*)regional_alloc(region, newlen);
785 if(!newname)
786 return NULL;
787 /* new name is concatenation of qname front (without DNAME owner)
788 * and DNAME target name */
789 memcpy(newname, q->qname, q->qname_len-rrset->rk.dname_len);
790 memmove(newname+(q->qname_len-rrset->rk.dname_len), dtarg, dtarglen);
791 /* create rest of CNAME rrset */
792 ck = (struct ub_packed_rrset_key*)regional_alloc(region,
793 sizeof(struct ub_packed_rrset_key));
794 if(!ck)
795 return NULL;
796 memset(&ck->entry, 0, sizeof(ck->entry));
797 msg->rep->rrsets[1] = ck;
798 ck->entry.key = ck;
799 ck->rk.type = htons(LDNS_RR_TYPE_CNAME);
800 ck->rk.rrset_class = rrset->rk.rrset_class;
801 ck->rk.flags = 0;
802 ck->rk.dname = regional_alloc_init(region, q->qname, q->qname_len);
803 if(!ck->rk.dname)
804 return NULL;
805 ck->rk.dname_len = q->qname_len;
806 ck->entry.hash = rrset_key_hash(&ck->rk);
807 newd = (struct packed_rrset_data*)regional_alloc_zero(region,
808 sizeof(struct packed_rrset_data) + sizeof(size_t) +
809 sizeof(uint8_t*) + sizeof(time_t) + sizeof(uint16_t)
810 + newlen);
811 if(!newd)
812 return NULL;
813 ck->entry.data = newd;
814 newd->ttl = d->ttl - now; /* RFC6672: synth CNAME TTL == DNAME TTL */
815 newd->count = 1;
816 newd->rrsig_count = 0;
817 newd->trust = rrset_trust_ans_noAA;
818 newd->rr_len = (size_t*)((uint8_t*)newd +
819 sizeof(struct packed_rrset_data));
820 newd->rr_len[0] = newlen + sizeof(uint16_t);
821 packed_rrset_ptr_fixup(newd);
822 newd->rr_ttl[0] = newd->ttl;
823 msg->rep->ttl = newd->ttl;
824 msg->rep->prefetch_ttl = PREFETCH_TTL_CALC(newd->ttl);
825 msg->rep->serve_expired_ttl = newd->ttl + SERVE_EXPIRED_TTL;
826 sldns_write_uint16(newd->rr_data[0], newlen);
827 memmove(newd->rr_data[0] + sizeof(uint16_t), newname, newlen);
828 msg->rep->an_numrrsets ++;
829 msg->rep->rrset_count ++;
830 return msg;
831 }
832
833 /** Fill TYPE_ANY response with some data from cache */
834 static struct dns_msg*
fill_any(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,struct regional * region)835 fill_any(struct module_env* env,
836 uint8_t* qname, size_t qnamelen, uint16_t qtype, uint16_t qclass,
837 struct regional* region)
838 {
839 time_t now = *env->now;
840 struct dns_msg* msg = NULL;
841 uint16_t lookup[] = {LDNS_RR_TYPE_A, LDNS_RR_TYPE_AAAA,
842 LDNS_RR_TYPE_MX, LDNS_RR_TYPE_SOA, LDNS_RR_TYPE_NS,
843 LDNS_RR_TYPE_DNAME, 0};
844 int i, num=6; /* number of RR types to look up */
845 log_assert(lookup[num] == 0);
846
847 if(env->cfg->deny_any) {
848 /* return empty message */
849 msg = dns_msg_create(qname, qnamelen, qtype, qclass,
850 region, 0);
851 if(!msg) {
852 return NULL;
853 }
854 /* set NOTIMPL for RFC 8482 */
855 msg->rep->flags |= LDNS_RCODE_NOTIMPL;
856 msg->rep->security = sec_status_indeterminate;
857 return msg;
858 }
859
860 for(i=0; i<num; i++) {
861 /* look up this RR for inclusion in type ANY response */
862 struct ub_packed_rrset_key* rrset = rrset_cache_lookup(
863 env->rrset_cache, qname, qnamelen, lookup[i],
864 qclass, 0, now, 0);
865 struct packed_rrset_data *d;
866 if(!rrset)
867 continue;
868
869 /* only if rrset from answer section */
870 d = (struct packed_rrset_data*)rrset->entry.data;
871 if(d->trust == rrset_trust_add_noAA ||
872 d->trust == rrset_trust_auth_noAA ||
873 d->trust == rrset_trust_add_AA ||
874 d->trust == rrset_trust_auth_AA) {
875 lock_rw_unlock(&rrset->entry.lock);
876 continue;
877 }
878
879 /* create msg if none */
880 if(!msg) {
881 msg = dns_msg_create(qname, qnamelen, qtype, qclass,
882 region, (size_t)(num-i));
883 if(!msg) {
884 lock_rw_unlock(&rrset->entry.lock);
885 return NULL;
886 }
887 }
888
889 /* add RRset to response */
890 if(!dns_msg_ansadd(msg, region, rrset, now)) {
891 lock_rw_unlock(&rrset->entry.lock);
892 return NULL;
893 }
894 lock_rw_unlock(&rrset->entry.lock);
895 }
896 return msg;
897 }
898
899 struct dns_msg*
dns_cache_lookup(struct module_env * env,uint8_t * qname,size_t qnamelen,uint16_t qtype,uint16_t qclass,uint16_t flags,struct regional * region,struct regional * scratch,int no_partial,uint8_t * dpname,size_t dpnamelen)900 dns_cache_lookup(struct module_env* env,
901 uint8_t* qname, size_t qnamelen, uint16_t qtype, uint16_t qclass,
902 uint16_t flags, struct regional* region, struct regional* scratch,
903 int no_partial, uint8_t* dpname, size_t dpnamelen)
904 {
905 struct lruhash_entry* e;
906 struct query_info k;
907 hashvalue_type h;
908 time_t now = *env->now;
909 struct ub_packed_rrset_key* rrset;
910
911 /* lookup first, this has both NXdomains and ANSWER responses */
912 k.qname = qname;
913 k.qname_len = qnamelen;
914 k.qtype = qtype;
915 k.qclass = qclass;
916 k.local_alias = NULL;
917 h = query_info_hash(&k, flags);
918 e = slabhash_lookup(env->msg_cache, h, &k, 0);
919 if(e) {
920 struct msgreply_entry* key = (struct msgreply_entry*)e->key;
921 struct reply_info* data = (struct reply_info*)e->data;
922 struct dns_msg* msg = tomsg(env, &key->key, data, region, now, 0,
923 scratch);
924 if(msg) {
925 lock_rw_unlock(&e->lock);
926 return msg;
927 }
928 /* could be msg==NULL; due to TTL or not all rrsets available */
929 lock_rw_unlock(&e->lock);
930 }
931
932 /* see if a DNAME exists. Checked for first, to enforce that DNAMEs
933 * are more important, the CNAME is resynthesized and thus
934 * consistent with the DNAME */
935 if(!no_partial &&
936 (rrset=find_closest_of_type(env, qname, qnamelen, qclass, now,
937 LDNS_RR_TYPE_DNAME, 1, 0, NULL, 0))) {
938 /* synthesize a DNAME+CNAME message based on this */
939 enum sec_status sec_status = sec_status_unchecked;
940 struct dns_msg* msg = synth_dname_msg(rrset, region, now, &k,
941 &sec_status);
942 if(msg) {
943 struct ub_packed_rrset_key* cname_rrset;
944 lock_rw_unlock(&rrset->entry.lock);
945 /* now, after unlocking the DNAME rrset lock,
946 * check the sec_status, and see if we need to look
947 * up the CNAME record associated before it can
948 * be used */
949 /* normally, only secure DNAMEs allowed from cache*/
950 if(sec_status == sec_status_secure)
951 return msg;
952 /* but if we have a CNAME cached with this name, then we
953 * have previously already allowed this name to pass.
954 * the next cache lookup is going to fetch that CNAME itself,
955 * but it is better to have the (unsigned)DNAME + CNAME in
956 * that case */
957 cname_rrset = rrset_cache_lookup(
958 env->rrset_cache, qname, qnamelen,
959 LDNS_RR_TYPE_CNAME, qclass, 0, now, 0);
960 if(cname_rrset) {
961 /* CNAME already synthesized by
962 * synth_dname_msg routine, so we can
963 * straight up return the msg */
964 lock_rw_unlock(&cname_rrset->entry.lock);
965 return msg;
966 }
967 } else {
968 lock_rw_unlock(&rrset->entry.lock);
969 }
970 }
971
972 /* see if we have CNAME for this domain,
973 * but not for DS records (which are part of the parent) */
974 if(!no_partial && qtype != LDNS_RR_TYPE_DS &&
975 (rrset=rrset_cache_lookup(env->rrset_cache, qname, qnamelen,
976 LDNS_RR_TYPE_CNAME, qclass, 0, now, 0))) {
977 uint8_t* wc = NULL;
978 size_t wl;
979 /* if the rrset is not a wildcard expansion, with wcname */
980 /* because, if we return that CNAME rrset on its own, it is
981 * missing the NSEC or NSEC3 proof */
982 if(!(val_rrset_wildcard(rrset, &wc, &wl) && wc != NULL)) {
983 struct dns_msg* msg = rrset_msg(rrset, region, now, &k);
984 if(msg) {
985 lock_rw_unlock(&rrset->entry.lock);
986 return msg;
987 }
988 }
989 lock_rw_unlock(&rrset->entry.lock);
990 }
991
992 /* construct DS, DNSKEY messages from rrset cache. */
993 if((qtype == LDNS_RR_TYPE_DS || qtype == LDNS_RR_TYPE_DNSKEY) &&
994 (rrset=rrset_cache_lookup(env->rrset_cache, qname, qnamelen,
995 qtype, qclass, 0, now, 0))) {
996 /* if the rrset is from the additional section, and the
997 * signatures have fallen off, then do not synthesize a msg
998 * instead, allow a full query for signed results to happen.
999 * Forego all rrset data from additional section, because
1000 * some signatures may not be present and cause validation
1001 * failure.
1002 */
1003 struct packed_rrset_data *d = (struct packed_rrset_data*)
1004 rrset->entry.data;
1005 if(d->trust != rrset_trust_add_noAA &&
1006 d->trust != rrset_trust_add_AA &&
1007 (qtype == LDNS_RR_TYPE_DS ||
1008 (d->trust != rrset_trust_auth_noAA
1009 && d->trust != rrset_trust_auth_AA) )) {
1010 struct dns_msg* msg = rrset_msg(rrset, region, now, &k);
1011 if(msg) {
1012 lock_rw_unlock(&rrset->entry.lock);
1013 return msg;
1014 }
1015 }
1016 lock_rw_unlock(&rrset->entry.lock);
1017 }
1018
1019 /* stop downwards cache search on NXDOMAIN.
1020 * Empty nonterminals are NOERROR, so an NXDOMAIN for foo
1021 * means bla.foo also does not exist. The DNSSEC proofs are
1022 * the same. We search upwards for NXDOMAINs. */
1023 if(env->cfg->harden_below_nxdomain) {
1024 while(!dname_is_root(k.qname)) {
1025 if(dpname && dpnamelen
1026 && !dname_subdomain_c(k.qname, dpname))
1027 break; /* no synth nxdomain above the stub */
1028 dname_remove_label(&k.qname, &k.qname_len);
1029 h = query_info_hash(&k, flags);
1030 e = slabhash_lookup(env->msg_cache, h, &k, 0);
1031 if(!e && k.qtype != LDNS_RR_TYPE_A &&
1032 env->cfg->qname_minimisation) {
1033 k.qtype = LDNS_RR_TYPE_A;
1034 h = query_info_hash(&k, flags);
1035 e = slabhash_lookup(env->msg_cache, h, &k, 0);
1036 }
1037 if(e) {
1038 struct reply_info* data = (struct reply_info*)e->data;
1039 struct dns_msg* msg;
1040 if(FLAGS_GET_RCODE(data->flags) == LDNS_RCODE_NXDOMAIN
1041 && data->security == sec_status_secure
1042 && (data->an_numrrsets == 0 ||
1043 ntohs(data->rrsets[0]->rk.type) != LDNS_RR_TYPE_CNAME)
1044 && (msg=tomsg(env, &k, data, region, now, 0, scratch))) {
1045 lock_rw_unlock(&e->lock);
1046 msg->qinfo.qname=qname;
1047 msg->qinfo.qname_len=qnamelen;
1048 /* check that DNSSEC really works out */
1049 msg->rep->security = sec_status_unchecked;
1050 iter_scrub_nxdomain(msg);
1051 return msg;
1052 }
1053 lock_rw_unlock(&e->lock);
1054 }
1055 k.qtype = qtype;
1056 }
1057 }
1058
1059 /* fill common RR types for ANY response to avoid requery */
1060 if(qtype == LDNS_RR_TYPE_ANY) {
1061 return fill_any(env, qname, qnamelen, qtype, qclass, region);
1062 }
1063
1064 return NULL;
1065 }
1066
1067 int
dns_cache_store(struct module_env * env,struct query_info * msgqinf,struct reply_info * msgrep,int is_referral,time_t leeway,int pside,struct regional * region,uint32_t flags,time_t qstarttime)1068 dns_cache_store(struct module_env* env, struct query_info* msgqinf,
1069 struct reply_info* msgrep, int is_referral, time_t leeway, int pside,
1070 struct regional* region, uint32_t flags, time_t qstarttime)
1071 {
1072 struct reply_info* rep = NULL;
1073 /* alloc, malloc properly (not in region, like msg is) */
1074 rep = reply_info_copy(msgrep, env->alloc, NULL);
1075 if(!rep)
1076 return 0;
1077 /* ttl must be relative ;i.e. 0..86400 not time(0)+86400.
1078 * the env->now is added to message and RRsets in this routine. */
1079 /* the leeway is used to invalidate other rrsets earlier */
1080 if(is_referral) {
1081 /* store rrsets */
1082 struct rrset_ref ref;
1083 size_t i;
1084 for(i=0; i<rep->rrset_count; i++) {
1085 packed_rrset_ttl_add((struct packed_rrset_data*)
1086 rep->rrsets[i]->entry.data, *env->now);
1087 ref.key = rep->rrsets[i];
1088 ref.id = rep->rrsets[i]->id;
1089 /*ignore ret: it was in the cache, ref updated */
1090 /* no leeway for typeNS */
1091 (void)rrset_cache_update(env->rrset_cache, &ref,
1092 env->alloc,
1093 ((ntohs(ref.key->rk.type)==LDNS_RR_TYPE_NS
1094 && !pside) ? qstarttime:*env->now + leeway));
1095 }
1096 reply_info_delete(rep, NULL);
1097 return 1;
1098 } else {
1099 /* store msg, and rrsets */
1100 struct query_info qinf;
1101 hashvalue_type h;
1102
1103 qinf = *msgqinf;
1104 qinf.qname = memdup(msgqinf->qname, msgqinf->qname_len);
1105 if(!qinf.qname) {
1106 reply_info_parsedelete(rep, env->alloc);
1107 return 0;
1108 }
1109 /* fixup flags to be sensible for a reply based on the cache */
1110 /* this module means that RA is available. It is an answer QR.
1111 * Not AA from cache. Not CD in cache (depends on client bit). */
1112 rep->flags |= (BIT_RA | BIT_QR);
1113 rep->flags &= ~(BIT_AA | BIT_CD);
1114 h = query_info_hash(&qinf, (uint16_t)flags);
1115 dns_cache_store_msg(env, &qinf, h, rep, leeway, pside, msgrep,
1116 flags, region, qstarttime);
1117 /* qname is used inside query_info_entrysetup, and set to
1118 * NULL. If it has not been used, free it. free(0) is safe. */
1119 free(qinf.qname);
1120 }
1121 return 1;
1122 }
1123
1124 int
dns_cache_prefetch_adjust(struct module_env * env,struct query_info * qinfo,time_t adjust,uint16_t flags)1125 dns_cache_prefetch_adjust(struct module_env* env, struct query_info* qinfo,
1126 time_t adjust, uint16_t flags)
1127 {
1128 struct msgreply_entry* msg;
1129 msg = msg_cache_lookup(env, qinfo->qname, qinfo->qname_len,
1130 qinfo->qtype, qinfo->qclass, flags, *env->now, 1);
1131 if(msg) {
1132 struct reply_info* rep = (struct reply_info*)msg->entry.data;
1133 if(rep) {
1134 rep->prefetch_ttl += adjust;
1135 lock_rw_unlock(&msg->entry.lock);
1136 return 1;
1137 }
1138 lock_rw_unlock(&msg->entry.lock);
1139 }
1140 return 0;
1141 }
1142